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Schoenmakers A, Mieras L, Budiawan T, van Brakel WH. The State of Affairs in Post-Exposure Leprosy Prevention: A Descriptive Meta-Analysis on Immuno- and Chemo-Prophylaxis. Research and reports in tropical medicine [Internet]. 2020;11:97-117. Available from: https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7573302/pdf/rrtm-11-97.pdf
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Karamova AE, Semenova VG, Verbenko DA, Obraztsova OA, Vanchugova KM, Nikonorov AA, et al. Experimental Modeling of Leprosy in BALB/c, BALB/c Nude, CBA, and C57BL/6ТNF Mice. Bulletin of experimental biology and medicine. 2020;.
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Hughes TK, Wadsworth MH, Gierahn TM, Do T, Weiss D, Andrade PR, et al. Second-Strand Synthesis-Based Massively Parallel scRNA-Seq Reveals Cellular States and Molecular Features of Human Inflammatory Skin Pathologies. Immunity [Internet]. 2020;53(4):878-894.e7. Available from: https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7562821/
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Granger DL, Rosado-Santos H, Lo TS, Florell SR, Shimwella RAT. Functional Impairment of Skin Appendages Due to Peripheral Nerve Involvement by Mycobacterium leprae. Open forum infectious diseases [Internet]. 2020;7(10):ofaa419. Available from: https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7566401/pdf/ofaa419.pdf
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Semrau M, Ali O, Deribe K, Mengiste A, Tesfaye A, Kinfe M, et al. EnDPoINT: protocol for an implementation research study to integrate a holistic package of physical health, mental health and psychosocial care for podoconiosis, lymphatic filariasis and leprosy into routine health services in Ethiopia. BMJ open [Internet]. 2020;10(10):e037675. Available from: https://bmjopen.bmj.com/content/bmjopen/10/10/e037675.full.pdf
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Oliveira JAP, Gandini M, Sales JS, Fujimori SK, Barbosa MGM, Frutuoso VS, et al. Mycobacterium leprae induces a tolerogenic profile in monocyte-derived dendritic cells via TLR2 induction of IDO. Journal of leukocyte biology [Internet]. 2020;. Available from: https://jlb.onlinelibrary.wiley.com/doi/epdf/10.1002/JLB.4A0320-188R